Files
msd-core/tests/init-manager.test.cjs
Tom Boucher 511c900052 fix(#4458): reuse detectSubRepos for new-project.md's sub-repo detection (#4548)
* fix(#4458): reuse detectSubRepos for new-project.md's sub-repo detection

new-project.md's Step 5.1 (Sub-Repo Detection) ran its own bash predicate:

  find . -maxdepth 1 -type d -not -name ".*" -not -name "node_modules" \
    -exec test -d "{}/.git" \; -print

`test -d` requires .git to be a DIRECTORY. A linked git worktree's .git is
a FILE (a `gitdir: <path>` pointer), so this predicate silently excluded
valid linked-worktree children while still finding ordinary clones.

src/core-utils.cts's detectSubRepos(cwd) already handles this correctly
(fs.existsSync, type-agnostic) but had zero callers anywhere in the
codebase -- orphaned logic the workflow never actually used, despite
duplicating a narrower version of the same check inline.

Wired detectSubRepos into cmdInitNewProject's JSON output as a new
sub_repos_detected field (matching the file's existing pattern of
similar directory-scan-derived fields like has_existing_code/
is_brownfield/has_codebase_map) and replaced the workflow's raw find
fence with a gsd_run query init.new-project call reading that field --
removing the duplicate, narrower detection logic entirely rather than
patching it in place, per the issue's own "reuse a central policy"
framing.

Added the missing .git-as-FILE test case to the existing
tests/core-utils.test.cjs detectSubRepos coverage (proving the helper
was already correct -- the defect was entirely in the unwired workflow
predicate) plus CLI-level end-to-end coverage in
tests/init-manager.test.cjs using a REAL `git worktree add` fixture,
matching the issue's own reproduction steps, alongside an ordinary
child-clone case and a non-repository-directory negative case.

Refreshed tests/fixtures/compact-content-benchmark-baseline.json (gsd-test
caught the drift from new-project.md's byte-count change; the benchmark
script itself always exits 0 -- report, not gate -- but the wrapper test
enforces the committed baseline stays in sync).

Emitted-Drift-Ack-Growth: new-project.md — #4458 replaces the raw find predicate in Step 5.1 with a gsd_run query call reading the new sub_repos_detected field, net +140 bytes
Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>

* docs(#4458): backfill changeset PR number

pr: 0 -> pr: 4548

Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>

* fix(#4458): bound the new git worktree add spawn with a named timeout

CI's lint-tests caught two ESLint findings my local gsd-test run
couldn't see (gsd-test's matrix doesn't run npm run lint:ci -- same gap
already observed on #4456's PR):

- local/no-unbounded-spawn: the new execFileSync('git', ['worktree',
  'add', ...]) call had no timeout, an indefinite-hang risk.
- local/no-adhoc-timeout-literal: my first fix (a bare `timeout: 15_000`
  literal) was itself flagged -- two independent hardcoded copies of a
  guessed timeout can silently drift or collide (this repo hit exactly
  that on 2026-09-06, PR #4428).

Fixed by importing GIT_FIXTURE_TIMEOUT_MS from tests/helpers/timeouts.cjs
-- `git worktree add` checks out files into a new working tree, the same
"construction" weight class as init/config/add/commit that constant
already covers, not plain plumbing (GIT_TIMEOUT_MS's class).

Verified via `npm run lint` directly (clean) before re-running gsd-test.

Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>

* fix(#4458): reduce redundant git subprocess overhead in new tests

CI's full-test Windows shard 2/3 failed: chunk 1/9 (306 files) exceeded
its internal 600s budget and was force-killed, with an unrelated file
(codex-config.test.cjs) in flight at the moment of the kill -- meaning
the chunk's AGGREGATE runtime, not any single hang, blew the budget.

This PR's own three new tests each independently called
createTempGitProject() (git init + a commit), and one of them also runs
git worktree add -- real subprocess spawns, each Defender-scanned on
Windows CI (tests/helpers/timeouts.cjs's own documented rationale for
why Windows spawn classes get generous budgets). That's a genuine,
quantifiable overhead addition to the exact chunk that timed out, not
something to wave off as unrelated flake without checking.

Two of the three tests never actually needed a real git repo --
detectSubRepos only inspects a CHILD directory's own .git, never the
root's git state, and the existing SUBCOMMANDS loop earlier in this same
file already proves `init new-project` succeeds against a plain,
non-git createTempProject() fixture. Switched those two tests to the
lighter fixture, leaving only the one test that genuinely needs a real
repo (git worktree add requires one) on createTempGitProject().

Co-Authored-By: Claude Sonnet 5 <noreply@anthropic.com>

---------

Co-authored-by: sim <sim@local>
Co-authored-by: Claude Sonnet 5 <noreply@anthropic.com>
2026-09-08 12:39:34 -04:00

1649 lines
69 KiB
JavaScript

/**
* GSD Tools Tests - Init Manager
*/
const { test, describe, beforeEach, afterEach } = require('node:test');
const assert = require('node:assert/strict');
const fs = require('fs');
const path = require('path');
const { runGsdTools, createTempProject, cleanup, absPlanningPath } = require('./helpers.cjs');
const { seedWorkstream } = require('./fixtures/index.cjs');
// Helper: write a minimal ROADMAP.md with phases
function writeRoadmap(tmpDir, phases) {
const sections = phases.map(p => {
let section = `### Phase ${p.number}: ${p.name}\n\n**Goal:** ${p.goal || 'Do the thing'}\n`;
if (p.depends_on) section += `**Depends on:** ${p.depends_on}\n`;
return section;
}).join('\n');
const checklist = phases.map(p => {
const mark = p.complete ? 'x' : ' ';
return `- [${mark}] **Phase ${p.number}: ${p.name}**`;
}).join('\n');
const content = `# Roadmap\n\n## Progress\n\n${checklist}\n\n${sections}`;
fs.writeFileSync(path.join(tmpDir, '.planning', 'ROADMAP.md'), content);
}
// Helper: write a minimal STATE.md
function writeState(tmpDir) {
fs.writeFileSync(path.join(tmpDir, '.planning', 'STATE.md'), '---\nstatus: active\n---\n# State\n');
}
// Helper: scaffold a phase directory with specific artifacts
function scaffoldPhase(tmpDir, num, opts = {}) {
const padded = String(num).padStart(2, '0');
const slug = opts.slug || 'test-phase';
const dir = path.join(tmpDir, '.planning', 'phases', `${padded}-${slug}`);
fs.mkdirSync(dir, { recursive: true });
if (opts.context) fs.writeFileSync(path.join(dir, `${padded}-CONTEXT.md`), '# Context');
if (opts.research) fs.writeFileSync(path.join(dir, `${padded}-RESEARCH.md`), '# Research');
if (opts.plans) {
for (let i = 1; i <= opts.plans; i++) {
const planPad = String(i).padStart(2, '0');
fs.writeFileSync(path.join(dir, `${padded}-${planPad}-PLAN.md`), `# Plan ${i}`);
}
}
if (opts.summaries) {
for (let i = 1; i <= opts.summaries; i++) {
const sumPad = String(i).padStart(2, '0');
fs.writeFileSync(path.join(dir, `${padded}-${sumPad}-SUMMARY.md`), `# Summary ${i}`);
}
}
return dir;
}
function writePassedVerification(phaseDir, padded) {
fs.writeFileSync(
path.join(phaseDir, `${padded}-VERIFICATION.md`),
['---', 'status: passed', '---', '', '# Verification', ''].join('\n')
);
}
describe('init manager', () => {
let tmpDir;
beforeEach(() => {
tmpDir = createTempProject();
});
afterEach(() => {
cleanup(tmpDir);
});
test('fails without ROADMAP.md', () => {
writeState(tmpDir);
const result = runGsdTools('init manager', tmpDir);
assert.ok(!result.success);
assert.ok(result.error.includes('ROADMAP.md'));
});
test('fails without STATE.md', () => {
writeRoadmap(tmpDir, [{ number: '1', name: 'Setup' }]);
const result = runGsdTools('init manager', tmpDir);
assert.ok(!result.success);
assert.ok(result.error.includes('STATE.md'));
});
test('returns basic structure with phases', () => {
writeState(tmpDir);
writeRoadmap(tmpDir, [
{ number: '1', name: 'Foundation' },
{ number: '2', name: 'API Layer' },
{ number: '3', name: 'UI' },
]);
const result = runGsdTools('init manager', tmpDir);
assert.ok(result.success, `Command failed: ${result.error}`);
const output = JSON.parse(result.output);
assert.strictEqual(output.phase_count, 3);
assert.strictEqual(output.completed_count, 0);
assert.strictEqual(output.roadmap_exists, true);
assert.strictEqual(output.state_exists, true);
assert.ok(Array.isArray(output.phases));
assert.ok(Array.isArray(output.recommended_actions));
});
test('detects disk status correctly for each phase state', () => {
writeState(tmpDir);
writeRoadmap(tmpDir, [
{ number: '1', name: 'Complete Phase', complete: true },
{ number: '2', name: 'Planned Phase' },
{ number: '3', name: 'Discussed Phase' },
{ number: '4', name: 'Empty Phase' },
{ number: '5', name: 'Not Started' },
]);
// Phase 1: complete (plans + matching summaries + passed verification)
writePassedVerification(scaffoldPhase(tmpDir, 1, { slug: 'complete-phase', context: true, plans: 2, summaries: 2 }), '01');
// Phase 2: planned (plans, no summaries)
scaffoldPhase(tmpDir, 2, { slug: 'planned-phase', context: true, plans: 3 });
// Phase 3: discussed (context only)
scaffoldPhase(tmpDir, 3, { slug: 'discussed-phase', context: true });
// Phase 4: empty directory
scaffoldPhase(tmpDir, 4, { slug: 'empty-phase' });
// Phase 5: no directory at all
const result = runGsdTools('init manager', tmpDir);
assert.ok(result.success, `Command failed: ${result.error}`);
const output = JSON.parse(result.output);
assert.strictEqual(output.phases[0].disk_status, 'complete');
assert.strictEqual(output.phases[1].disk_status, 'planned');
assert.strictEqual(output.phases[2].disk_status, 'discussed');
assert.strictEqual(output.phases[3].disk_status, 'empty');
assert.strictEqual(output.phases[4].disk_status, 'no_directory');
});
test('treats plans/PLAN-NN.md layout as planned/complete counts (#3053)', () => {
writeState(tmpDir);
writeRoadmap(tmpDir, [
{ number: '1', name: 'Nested Plans' },
]);
const phaseDir = path.join(tmpDir, '.planning', 'phases', '01-nested-plans');
fs.mkdirSync(path.join(phaseDir, 'plans'), { recursive: true });
fs.writeFileSync(path.join(phaseDir, 'plans', 'PLAN-01.md'), '# Plan 1');
fs.writeFileSync(path.join(phaseDir, 'plans', 'PLAN-02.md'), '# Plan 2');
fs.writeFileSync(path.join(phaseDir, 'plans', 'SUMMARY-01.md'), '# Summary 1');
const result = runGsdTools('init manager', tmpDir);
assert.ok(result.success, `Command failed: ${result.error}`);
const output = JSON.parse(result.output);
assert.strictEqual(output.phases[0].plan_count, 2);
assert.strictEqual(output.phases[0].summary_count, 1);
assert.strictEqual(output.phases[0].disk_status, 'partial');
});
test('dependency satisfaction: deps on complete phases = satisfied', () => {
writeState(tmpDir);
writeRoadmap(tmpDir, [
{ number: '1', name: 'Foundation', complete: true },
{ number: '2', name: 'Depends on 1', depends_on: 'Phase 1' },
]);
writePassedVerification(scaffoldPhase(tmpDir, 1, { slug: 'foundation', plans: 1, summaries: 1 }), '01');
const result = runGsdTools('init manager', tmpDir);
const output = JSON.parse(result.output);
assert.strictEqual(output.phases[0].deps_satisfied, true);
assert.strictEqual(output.phases[1].deps_satisfied, true);
});
test('dependency satisfaction: deps on incomplete phases = not satisfied', () => {
writeState(tmpDir);
writeRoadmap(tmpDir, [
{ number: '1', name: 'Foundation' },
{ number: '2', name: 'Depends on 1', depends_on: 'Phase 1' },
]);
const result = runGsdTools('init manager', tmpDir);
const output = JSON.parse(result.output);
assert.strictEqual(output.phases[0].deps_satisfied, true); // no deps
assert.strictEqual(output.phases[1].deps_satisfied, false); // phase 1 not complete
});
test('parallel discuss: all undiscussed phases are marked is_next_to_discuss', () => {
writeState(tmpDir);
writeRoadmap(tmpDir, [
{ number: '1', name: 'Foundation' },
{ number: '2', name: 'API Layer' },
{ number: '3', name: 'UI' },
]);
const result = runGsdTools('init manager', tmpDir);
const output = JSON.parse(result.output);
// All three phases are undiscussed — all should be discussable
assert.strictEqual(output.phases[0].is_next_to_discuss, true);
assert.strictEqual(output.phases[1].is_next_to_discuss, true);
assert.strictEqual(output.phases[2].is_next_to_discuss, true);
// All three should have discuss recommendations
const discussActions = output.recommended_actions.filter(a => a.action === 'discuss');
assert.strictEqual(discussActions.length, 3);
});
test('discussed phase is not discussable; undiscussed siblings are', () => {
writeState(tmpDir);
writeRoadmap(tmpDir, [
{ number: '1', name: 'Foundation' },
{ number: '2', name: 'API Layer' },
{ number: '3', name: 'UI' },
]);
// Phase 1 discussed
scaffoldPhase(tmpDir, 1, { slug: 'foundation', context: true });
const result = runGsdTools('init manager', tmpDir);
const output = JSON.parse(result.output);
// Phase 1 is discussed; phases 2 and 3 are both undiscussed and discussable
assert.strictEqual(output.phases[0].is_next_to_discuss, false);
assert.strictEqual(output.phases[1].is_next_to_discuss, true);
assert.strictEqual(output.phases[2].is_next_to_discuss, true);
// Should recommend plan phase 1 AND discuss phases 2 and 3
const phase1Rec = output.recommended_actions.find(r => r.phase === '1');
const phase2Rec = output.recommended_actions.find(r => r.phase === '2');
const phase3Rec = output.recommended_actions.find(r => r.phase === '3');
assert.strictEqual(phase1Rec.action, 'plan');
assert.strictEqual(phase2Rec.action, 'discuss');
assert.strictEqual(phase3Rec.action, 'discuss');
});
test('sliding window: full pipeline — execute N, plan N+1, discuss N+2', () => {
writeState(tmpDir);
writeRoadmap(tmpDir, [
{ number: '1', name: 'Foundation', complete: true },
{ number: '2', name: 'API Layer' },
{ number: '3', name: 'Auth' },
{ number: '4', name: 'UI' },
{ number: '5', name: 'Polish' },
]);
writePassedVerification(scaffoldPhase(tmpDir, 1, { slug: 'foundation', plans: 1, summaries: 1 }), '01');
scaffoldPhase(tmpDir, 2, { slug: 'api-layer', context: true, plans: 2 }); // planned
scaffoldPhase(tmpDir, 3, { slug: 'auth', context: true }); // discussed
const result = runGsdTools('init manager', tmpDir);
const output = JSON.parse(result.output);
// Phases 4 and 5 are both undiscussed — both discussable
assert.strictEqual(output.phases[3].is_next_to_discuss, true);
assert.strictEqual(output.phases[4].is_next_to_discuss, true);
// Recommendations: execute 2, plan 3, discuss 4, discuss 5
assert.strictEqual(output.recommended_actions[0].action, 'execute');
assert.strictEqual(output.recommended_actions[0].phase, '2');
assert.strictEqual(output.recommended_actions[1].action, 'plan');
assert.strictEqual(output.recommended_actions[1].phase, '3');
const discussRecs = output.recommended_actions.filter(a => a.action === 'discuss').map(a => a.phase).sort();
assert.deepStrictEqual(discussRecs, ['4', '5']);
});
test('recommendation ordering: execute > plan > discuss', () => {
writeState(tmpDir);
writeRoadmap(tmpDir, [
{ number: '1', name: 'Complete', complete: true },
{ number: '2', name: 'Ready to Execute' },
{ number: '3', name: 'Ready to Plan' },
{ number: '4', name: 'Ready to Discuss' },
]);
writePassedVerification(scaffoldPhase(tmpDir, 1, { slug: 'complete', plans: 1, summaries: 1 }), '01');
scaffoldPhase(tmpDir, 2, { slug: 'ready-to-execute', context: true, plans: 2 });
scaffoldPhase(tmpDir, 3, { slug: 'ready-to-plan', context: true });
const result = runGsdTools('init manager', tmpDir);
const output = JSON.parse(result.output);
assert.ok(output.recommended_actions.length >= 3);
assert.strictEqual(output.recommended_actions[0].action, 'execute');
assert.strictEqual(output.recommended_actions[0].phase, '2');
assert.strictEqual(output.recommended_actions[1].action, 'plan');
assert.strictEqual(output.recommended_actions[1].phase, '3');
assert.strictEqual(output.recommended_actions[2].action, 'discuss');
assert.strictEqual(output.recommended_actions[2].phase, '4');
});
test('blocked phases not recommended', () => {
writeState(tmpDir);
writeRoadmap(tmpDir, [
{ number: '1', name: 'In Progress' },
{ number: '2', name: 'Blocked', depends_on: 'Phase 1' },
]);
const result = runGsdTools('init manager', tmpDir);
const output = JSON.parse(result.output);
// Phase 2 should not appear in recommendations (blocked by phase 1)
const phase2Rec = output.recommended_actions.find(r => r.phase === '2');
assert.strictEqual(phase2Rec, undefined);
});
test('all phases complete sets all_complete flag', () => {
writeState(tmpDir);
writeRoadmap(tmpDir, [
{ number: '1', name: 'Done', complete: true },
{ number: '2', name: 'Also Done', complete: true },
]);
writePassedVerification(scaffoldPhase(tmpDir, 1, { slug: 'done', plans: 1, summaries: 1 }), '01');
writePassedVerification(scaffoldPhase(tmpDir, 2, { slug: 'also-done', plans: 1, summaries: 1 }), '02');
const result = runGsdTools('init manager', tmpDir);
const output = JSON.parse(result.output);
assert.strictEqual(output.all_complete, true);
assert.strictEqual(output.recommended_actions.length, 0);
});
test('implementation-complete phase without passed verification is not all_complete', () => {
writeState(tmpDir);
writeRoadmap(tmpDir, [
{ number: '1', name: 'Implemented', complete: true },
]);
scaffoldPhase(tmpDir, 1, { slug: 'implemented', plans: 1, summaries: 1 });
const result = runGsdTools('init manager', tmpDir);
assert.ok(result.success, `Command failed: ${result.error}`);
const output = JSON.parse(result.output);
assert.strictEqual(output.all_complete, false);
assert.strictEqual(output.completed_count, 0);
assert.strictEqual(output.phases[0].disk_status, 'executed');
assert.strictEqual(output.phases[0].implementation_complete, true);
assert.strictEqual(output.phases[0].verification_status, 'missing');
assert.strictEqual(output.phases[0].verification_passed, false);
assert.strictEqual(output.recommended_actions[0].action, 'verify');
assert.match(output.recommended_actions[0].command, /execute-phase 1/);
});
test('stale passed verification is not projected as complete', () => {
writeState(tmpDir);
writeRoadmap(tmpDir, [
{ number: '1', name: 'Implemented', complete: true },
]);
const phaseDir = scaffoldPhase(tmpDir, 1, { slug: 'implemented', plans: 1, summaries: 1 });
writePassedVerification(phaseDir, '01');
const verificationPath = path.join(phaseDir, '01-VERIFICATION.md');
const summaryPath = path.join(phaseDir, '01-01-SUMMARY.md');
const older = new Date('2025-01-01T00:00:00.000Z');
const newer = new Date('2025-01-01T00:01:00.000Z');
fs.utimesSync(verificationPath, older, older);
fs.utimesSync(summaryPath, newer, newer);
const result = runGsdTools('init manager', tmpDir);
assert.ok(result.success, `Command failed: ${result.error}`);
const output = JSON.parse(result.output);
assert.strictEqual(output.all_complete, false);
assert.strictEqual(output.completed_count, 0);
assert.strictEqual(output.phases[0].disk_status, 'executed');
assert.strictEqual(output.phases[0].implementation_complete, true);
assert.strictEqual(output.phases[0].verification_status, 'stale');
assert.strictEqual(output.phases[0].verification_passed, false);
assert.strictEqual(output.phases[0].phase_complete, false);
assert.strictEqual(output.recommended_actions[0].action, 'verify');
assert.match(output.recommended_actions[0].reason, /verification stale/);
assert.match(output.recommended_actions[0].command, /verify-work 1/);
});
test('checked unpadded roadmap token does not satisfy padded unverified dependency', () => {
writeState(tmpDir);
const roadmap = [
'# Roadmap',
'',
'## Progress',
'',
'- [x] **Phase 1: Foundation**',
'- [ ] **Phase 02: Followup**',
'',
'### Phase 01: Foundation',
'',
'**Goal:** Build foundation',
'',
'### Phase 02: Followup',
'',
'**Goal:** Build followup',
'**Depends on:** Phase 1',
'',
].join('\n');
fs.writeFileSync(path.join(tmpDir, '.planning', 'ROADMAP.md'), roadmap);
scaffoldPhase(tmpDir, 1, { slug: 'foundation', plans: 1, summaries: 1 });
const result = runGsdTools('init manager', tmpDir);
assert.ok(result.success, `Command failed: ${result.error}`);
const output = JSON.parse(result.output);
const phase1 = output.phases.find(p => p.number === '01');
const phase2 = output.phases.find(p => p.number === '02');
assert.ok(phase1, 'Phase 01 should be in the output');
assert.strictEqual(phase1.phase_complete, false, 'Phase 01 is unverified and must not be complete');
assert.ok(phase2, 'Phase 02 should be in the output');
assert.strictEqual(phase2.deps_satisfied, false, 'Phase 02 dependency must wait for canonical Phase 01 verification');
});
test('WAITING.json detected when present', () => {
writeState(tmpDir);
writeRoadmap(tmpDir, [{ number: '1', name: 'Test' }]);
const waiting = { type: 'decision', phase: '1', question: 'Pick one' };
fs.writeFileSync(
path.join(tmpDir, '.planning', 'WAITING.json'),
JSON.stringify(waiting)
);
const result = runGsdTools('init manager', tmpDir);
const output = JSON.parse(result.output);
assert.deepStrictEqual(output.waiting_signal, waiting);
});
test('phase fields include goal and depends_on from roadmap', () => {
writeState(tmpDir);
writeRoadmap(tmpDir, [
{ number: '1', name: 'Foundation', goal: 'Set up the base' },
{ number: '2', name: 'API', goal: 'Build endpoints', depends_on: 'Phase 1' },
]);
const result = runGsdTools('init manager', tmpDir);
const output = JSON.parse(result.output);
assert.strictEqual(output.phases[0].goal, 'Set up the base');
assert.strictEqual(output.phases[0].depends_on, null);
assert.strictEqual(output.phases[1].goal, 'Build endpoints');
assert.strictEqual(output.phases[1].depends_on, 'Phase 1');
});
test('display_name truncates long phase names', () => {
writeState(tmpDir);
writeRoadmap(tmpDir, [
{ number: '1', name: 'Short' },
{ number: '2', name: 'Exactly Twenty Chars' },
{ number: '3', name: 'This Name Is Way Too Long For The Table' },
]);
const result = runGsdTools('init manager', tmpDir);
const output = JSON.parse(result.output);
assert.strictEqual(output.phases[0].display_name, 'Short');
assert.strictEqual(output.phases[1].display_name, 'Exactly Twenty Chars');
assert.strictEqual(output.phases[2].display_name, 'This Name Is Way To…');
assert.strictEqual(output.phases[2].display_name.length, 20);
// Full name is preserved
assert.strictEqual(output.phases[2].name, 'This Name Is Way Too Long For The Table');
});
test('activity detection: recent file = active', () => {
writeState(tmpDir);
writeRoadmap(tmpDir, [{ number: '1', name: 'Active Phase' }]);
// Scaffold with a file — it will have current mtime (within 5 min)
scaffoldPhase(tmpDir, 1, { slug: 'active-phase', context: true });
const result = runGsdTools('init manager', tmpDir);
const output = JSON.parse(result.output);
assert.strictEqual(output.phases[0].is_active, true);
assert.ok(output.phases[0].last_activity !== null);
});
test('activity detection: hour-old file = not active', () => {
writeState(tmpDir);
writeRoadmap(tmpDir, [{ number: '1', name: 'Stale Phase' }]);
const PINNED_NOW_MS = 1_700_000_000_000; // 2023-11-14T22:13:20.000Z (second-aligned)
const phaseDir = scaffoldPhase(tmpDir, 1, { slug: 'stale-phase', context: true });
const files = fs.readdirSync(phaseDir);
const old = new Date(PINNED_NOW_MS - 60 * 60 * 1000); // 1 hour before the pinned "now"
for (const f of files) {
fs.utimesSync(path.join(phaseDir, f), old, old);
}
const result = runGsdTools('init manager', tmpDir, {
GSD_TEST_MODE: '1', GSD_NOW_MS: String(PINNED_NOW_MS),
});
const output = JSON.parse(result.output);
assert.strictEqual(output.phases[0].is_active, false);
});
// #4134 — a first-ever ROADMAP.md whose H1 puts the version after the name
// (`# Roadmap: <Project> — <Milestone Name> (v1.13)` — the shape nothing
// templates for a project's first milestone) used to make the §7.2 pinned
// name rule return the literal `)` left after the version token as the
// milestone's "name", and init manager displayed it verbatim. The refusal
// reports the honest ADR-3180 §7.2 rule-6 answer instead: the version is
// real, the name is not resolvable from that heading, milestone_name is
// null — never a punctuation fragment.
test('#4134 — milestone_name is null, never ")", for a name-then-version H1', () => {
fs.writeFileSync(
path.join(tmpDir, '.planning', 'ROADMAP.md'),
[
'# Roadmap: GSD Core — Native OMP Runtime Support (v1.13)',
'',
'## Phases',
'',
'- [ ] **Phase 1: Runtime Adapter Interface**',
'',
'## Phase Details',
'',
'### Phase 1: Runtime Adapter Interface',
'',
'**Goal:** Define the adapter contract.',
'',
].join('\n')
);
fs.writeFileSync(
path.join(tmpDir, '.planning', 'STATE.md'),
[
'---',
'gsd_state_version: 1.0',
'milestone: v1.13',
'milestone_name: Native OMP Runtime Support',
'status: planning',
'---',
'',
'# Project State',
'',
].join('\n')
);
const result = runGsdTools('init manager', tmpDir);
assert.ok(result.success, `Command failed: ${result.error}`);
const output = JSON.parse(result.output);
assert.strictEqual(output.milestone_version, 'v1.13');
assert.strictEqual(output.milestone_name, null);
assert.ok(!result.output.includes('")"'), 'a lone ")" value must not appear anywhere in the JSON');
});
// #3314 — ADR-456 subprocess clock pin: cmdInitManager's `is_active` gate
// (nowMs - newestMtime < 300000) is CLI-subprocess tested, so only the
// GSD_TEST_MODE+GSD_NOW_MS pin can control "now" here (t.mock.timers in the
// test process cannot reach the spawned child). newestMtime is set via
// fs.utimesSync to an exact epoch offset from the pinned "now" so the
// 300000ms boundary is provable exactly, not just "roughly recent"/"roughly old".
describe('is_active boundary (#3314 — exactly 300000ms, condition is strict <)', () => {
const PINNED_NOW_MS = 1_700_000_000_000; // 2023-11-14T22:13:20.000Z (second-aligned)
const PIN_ENV = { GSD_TEST_MODE: '1', GSD_NOW_MS: String(PINNED_NOW_MS) };
function scaffoldWithMtimeOffset(tmpDirLocal, offsetMs) {
writeState(tmpDirLocal);
writeRoadmap(tmpDirLocal, [{ number: '1', name: 'Boundary Phase' }]);
const phaseDir = scaffoldPhase(tmpDirLocal, 1, { slug: 'boundary-phase', context: true });
const mtimeMs = PINNED_NOW_MS - offsetMs;
const mtimeDate = new Date(mtimeMs);
for (const f of fs.readdirSync(phaseDir)) {
fs.utimesSync(path.join(phaseDir, f), mtimeDate, mtimeDate);
}
}
test('boundary: 299999ms since last activity → is_active true', () => {
scaffoldWithMtimeOffset(tmpDir, 299_999);
const result = runGsdTools('init manager', tmpDir, PIN_ENV);
const output = JSON.parse(result.output);
assert.strictEqual(output.phases[0].is_active, true);
});
test('boundary: exactly 300000ms since last activity → is_active false', () => {
scaffoldWithMtimeOffset(tmpDir, 300_000);
const result = runGsdTools('init manager', tmpDir, PIN_ENV);
const output = JSON.parse(result.output);
assert.strictEqual(output.phases[0].is_active, false);
});
test('boundary: 300001ms since last activity → is_active false', () => {
scaffoldWithMtimeOffset(tmpDir, 300_001);
const result = runGsdTools('init manager', tmpDir, PIN_ENV);
const output = JSON.parse(result.output);
assert.strictEqual(output.phases[0].is_active, false);
});
});
test('conflict filter: blocks dependent phase execute when dep is active', () => {
writeState(tmpDir);
writeRoadmap(tmpDir, [
{ number: '1', name: 'Foundation', complete: true },
{ number: '2', name: 'API Layer', depends_on: 'Phase 1' },
{ number: '3', name: 'Auth', depends_on: 'Phase 2' },
]);
// Phase 2: partial (actively executing — has 2 plans, 1 summary)
scaffoldPhase(tmpDir, 2, { slug: 'api-layer', context: true, plans: 2, summaries: 1 });
// Phase 3: planned and deps would be met if Phase 2 were complete, but it's not
scaffoldPhase(tmpDir, 3, { slug: 'auth', context: true, plans: 1 });
const result = runGsdTools('init manager', tmpDir);
const output = JSON.parse(result.output);
// Phase 2 is partial — should NOT appear as execute recommendation (already running)
// Phase 3 deps_satisfied is false (Phase 2 not complete) — also no recommendation
const execRecs = output.recommended_actions.filter(r => r.action === 'execute');
assert.strictEqual(execRecs.length, 0);
});
test('conflict filter: allows independent phase execute in parallel', () => {
writeState(tmpDir);
writeRoadmap(tmpDir, [
{ number: '1', name: 'Foundation', complete: true },
{ number: '2', name: 'API Layer', depends_on: 'Phase 1' },
{ number: '3', name: 'Notifications' }, // no deps — independent
]);
// Phase 2: partial (actively executing)
scaffoldPhase(tmpDir, 2, { slug: 'api-layer', context: true, plans: 2, summaries: 1 });
// Phase 3: planned, no deps — independent of Phase 2
scaffoldPhase(tmpDir, 3, { slug: 'notifications', context: true, plans: 1 });
const result = runGsdTools('init manager', tmpDir);
const output = JSON.parse(result.output);
// Phase 3 is independent of Phase 2 — should be recommended for execution
const execRecs = output.recommended_actions.filter(r => r.action === 'execute');
assert.strictEqual(execRecs.length, 1);
assert.strictEqual(execRecs[0].phase, '3');
});
test('output includes project_root field', () => {
writeState(tmpDir);
writeRoadmap(tmpDir, [{ number: '1', name: 'Test' }]);
const result = runGsdTools('init manager', tmpDir);
const output = JSON.parse(result.output);
// macOS resolves /var → /private/var; normalize both sides
assert.strictEqual(fs.realpathSync(output.project_root), fs.realpathSync(tmpDir));
});
test('output includes manager_flags defaults when not configured', () => {
writeState(tmpDir);
writeRoadmap(tmpDir, [{ number: '1', name: 'Test' }]);
const result = runGsdTools('init manager', tmpDir);
const output = JSON.parse(result.output);
assert.ok(output.manager_flags, 'should include manager_flags');
assert.strictEqual(output.manager_flags.discuss, '');
assert.strictEqual(output.manager_flags.plan, '');
assert.strictEqual(output.manager_flags.execute, '');
});
test('output includes manager_flags from config when set', () => {
writeState(tmpDir);
writeRoadmap(tmpDir, [{ number: '1', name: 'Test' }]);
// Write config with manager flags
fs.writeFileSync(
path.join(tmpDir, '.planning', 'config.json'),
JSON.stringify({
manager: {
flags: {
discuss: '--auto --analyze',
plan: '--skip-research',
execute: '--interactive',
}
}
})
);
const result = runGsdTools('init manager', tmpDir);
const output = JSON.parse(result.output);
assert.ok(output.manager_flags, 'should include manager_flags');
assert.strictEqual(output.manager_flags.discuss, '--auto --analyze');
assert.strictEqual(output.manager_flags.plan, '--skip-research');
assert.strictEqual(output.manager_flags.execute, '--interactive');
});
test('sanitizes invalid manager_flags to prevent injection (#1410)', () => {
writeState(tmpDir);
writeRoadmap(tmpDir, [{ number: '1', name: 'Test' }]);
fs.writeFileSync(
path.join(tmpDir, '.planning', 'config.json'),
JSON.stringify({
manager: {
flags: {
discuss: '; rm -rf /',
plan: '--valid-flag',
execute: '$(whoami)',
}
}
})
);
const result = runGsdTools('init manager', tmpDir);
const output = JSON.parse(result.output);
// Invalid flags should be sanitized to empty string
assert.strictEqual(output.manager_flags.discuss, '', 'injection attempt should be sanitized');
assert.strictEqual(output.manager_flags.plan, '--valid-flag', 'valid flag should pass through');
assert.strictEqual(output.manager_flags.execute, '', 'command substitution should be sanitized');
});
test('does not recommend BACKLOG phases (999.x) as next actions', () => {
writeState(tmpDir);
// Regular phase (planned, deps met) plus a backlog phase (999.1) also planned
writeRoadmap(tmpDir, [
{ number: '1', name: 'Foundation' },
{ number: '999.1', name: 'Nice to have feature (BACKLOG)' },
]);
// Phase 1: planned (has plan, no summary)
scaffoldPhase(tmpDir, 1, { plans: 1 });
// Phase 999.1: planned (has plan, no summary)
const backlogDir = path.join(tmpDir, '.planning', 'phases', '999.1-backlog');
fs.mkdirSync(backlogDir, { recursive: true });
fs.writeFileSync(path.join(backlogDir, '999.1-01-PLAN.md'), '# Backlog Plan');
const result = runGsdTools('init manager', tmpDir);
assert.ok(result.success, `Command failed: ${result.error}`);
const output = JSON.parse(result.output);
const recommended = output.recommended_actions || [];
const backlogRecs = recommended.filter(r => /^999/.test(r.phase));
assert.strictEqual(backlogRecs.length, 0, 'no 999.x phases should appear in recommended_actions');
// Phase 1 (non-backlog) should still be recommended
const activeRecs = recommended.filter(r => r.phase === '1');
assert.strictEqual(activeRecs.length, 1, 'phase 1 should still be recommended');
});
test('output includes response_language when configured', () => {
writeState(tmpDir);
writeRoadmap(tmpDir, [{ number: '1', name: 'Test' }]);
fs.writeFileSync(
path.join(tmpDir, '.planning', 'config.json'),
JSON.stringify({ response_language: 'Japanese' })
);
const result = runGsdTools('init manager', tmpDir);
const output = JSON.parse(result.output);
assert.strictEqual(output.response_language, 'Japanese');
});
test('output omits response_language when not configured', () => {
writeState(tmpDir);
writeRoadmap(tmpDir, [{ number: '1', name: 'Test' }]);
const result = runGsdTools('init manager', tmpDir);
const output = JSON.parse(result.output);
assert.strictEqual(output.response_language, undefined);
});
test('all_complete is true when non-backlog phases are complete and 999.x exists (#2129)', () => {
writeState(tmpDir);
writeRoadmap(tmpDir, [
{ number: '1', name: 'Setup', complete: true },
{ number: '2', name: 'Core', complete: true },
{ number: '3', name: 'Polish', complete: true },
{ number: '999.1', name: 'Backlog idea' },
]);
// Scaffold completed phases on disk
writePassedVerification(scaffoldPhase(tmpDir, 1, { slug: 'setup', plans: 2, summaries: 2 }), '01');
writePassedVerification(scaffoldPhase(tmpDir, 2, { slug: 'core', plans: 1, summaries: 1 }), '02');
writePassedVerification(scaffoldPhase(tmpDir, 3, { slug: 'polish', plans: 1, summaries: 1 }), '03');
const result = runGsdTools('init manager', tmpDir);
assert.ok(result.success, `Command failed: ${result.error}`);
const output = JSON.parse(result.output);
assert.strictEqual(output.all_complete, true, 'all_complete should be true when only 999.x phases remain incomplete');
});
test('all_complete false with incomplete non-backlog phase still produces recommended_actions (#2129)', () => {
writeState(tmpDir);
writeRoadmap(tmpDir, [
{ number: '1', name: 'Setup', complete: true },
{ number: '2', name: 'Core', complete: true },
{ number: '3', name: 'Polish' },
{ number: '999.1', name: 'Backlog idea' },
]);
writePassedVerification(scaffoldPhase(tmpDir, 1, { slug: 'setup', plans: 1, summaries: 1 }), '01');
writePassedVerification(scaffoldPhase(tmpDir, 2, { slug: 'core', plans: 1, summaries: 1 }), '02');
// Phase 3 has no directory — should trigger discuss recommendation
const result = runGsdTools('init manager', tmpDir);
assert.ok(result.success, `Command failed: ${result.error}`);
const output = JSON.parse(result.output);
assert.strictEqual(output.all_complete, false, 'all_complete should be false with phase 3 incomplete');
assert.ok(output.recommended_actions.length > 0, 'recommended_actions should not be empty when non-backlog phases remain');
});
});
// ─────────────────────────────────────────────────────────────────────────────
// Bug #2267: deps_satisfied should include phases from shipped milestones.
//
// Root cause: completedNums was built only from the current milestone's phases,
// so a dependency on a phase from a previously shipped milestone was never
// satisfied — even though all prior-milestone phases are complete by definition.
// ─────────────────────────────────────────────────────────────────────────────
describe('init manager — cross-milestone dependency satisfaction (#2267)', () => {
let tmpDir;
beforeEach(() => {
tmpDir = createTempProject();
});
afterEach(() => {
cleanup(tmpDir);
});
/**
* Write a ROADMAP.md that has:
* - A shipped previous milestone (v1.0) inside a <details> block containing
* Phase 5 marked [x] complete.
* - A current active milestone (v2.0) containing Phase 6 that depends on
* Phase 5.
*/
function writeRoadmapWithShippedMilestone(dir) {
const content = [
'# Roadmap',
'',
'<details>',
'<summary>v1.0 — Initial Release (Shipped)</summary>',
'',
'## Roadmap v1.0: Initial Release',
'',
'- [x] **Phase 5: Auth**',
'',
'### Phase 5: Auth',
'**Goal:** Add authentication',
'',
'</details>',
'',
'## Roadmap v2.0: Dashboard',
'',
'- [ ] **Phase 6: Dashboard**',
'',
'### Phase 6: Dashboard',
'**Goal:** Build dashboard',
'**Depends on:** Phase 5',
'',
].join('\n');
fs.writeFileSync(path.join(dir, '.planning', 'ROADMAP.md'), content);
}
function writeStateWithMilestone(dir, version) {
fs.writeFileSync(
path.join(dir, '.planning', 'STATE.md'),
`---\nmilestone: ${version}\n---\n# State\n`
);
}
test('phase depending on a shipped-milestone phase has deps_satisfied: true (#2267)', () => {
writeRoadmapWithShippedMilestone(tmpDir);
writeStateWithMilestone(tmpDir, 'v2.0');
const result = runGsdTools('init manager', tmpDir);
assert.ok(result.success, `Command failed: ${result.error}`);
const output = JSON.parse(result.output);
// Only the current milestone's phases should appear in the phases array
assert.strictEqual(output.phases.length, 1, 'Should have exactly one phase from the current milestone');
const phase6 = output.phases[0];
assert.strictEqual(phase6.number, '6', 'Should be Phase 6');
// Phase 6 depends on Phase 5 from the prior milestone — must be satisfied
assert.strictEqual(
phase6.deps_satisfied,
true,
'Phase 6 dep on shipped Phase 5 should be satisfied'
);
});
test('phase depending on a non-existent phase has deps_satisfied: false (#2267)', () => {
writeRoadmapWithShippedMilestone(tmpDir);
writeStateWithMilestone(tmpDir, 'v2.0');
// Add a second phase in the current milestone that depends on a phantom phase
const roadmapPath = path.join(tmpDir, '.planning', 'ROADMAP.md');
const existing = fs.readFileSync(roadmapPath, 'utf-8');
const withExtra = existing + [
'### Phase 7: Extra',
'**Goal:** Extra work',
'**Depends on:** Phase 99',
'',
].join('\n');
fs.writeFileSync(roadmapPath, withExtra);
const result = runGsdTools('init manager', tmpDir);
assert.ok(result.success, `Command failed: ${result.error}`);
const output = JSON.parse(result.output);
const phase7 = output.phases.find(p => p.number === '7');
assert.ok(phase7, 'Phase 7 should be in the output');
assert.strictEqual(
phase7.deps_satisfied,
false,
'Phase 7 dep on non-existent Phase 99 should not be satisfied'
);
});
});
// ─────────────────────────────────────────────────────────────────────────────
// #4455 — init manager emits workstream-scoped state_path/roadmap_path/
// archive_dir (same pattern cmdInitPlanPhase already uses, plus the
// milestone.cts archive-dir composition, #1911). autonomous.md's
// discover_phases/iterate/lifecycle steps consume these instead of
// hardcoding `.planning/STATE.md` / `.planning/milestones/...`.
// ─────────────────────────────────────────────────────────────────────────────
describe('init manager — state_path/roadmap_path/archive_dir (#4455)', () => {
let tmpDir;
beforeEach(() => {
// macOS: realpath before absPlanningPath comparisons (symlinked /var/tmp).
tmpDir = require('fs').realpathSync(createTempProject());
});
afterEach(() => {
cleanup(tmpDir);
});
test('flat mode (no GSD_WORKSTREAM): paths resolve to root .planning (regression guard)', () => {
writeState(tmpDir);
writeRoadmap(tmpDir, [{ number: '1', name: 'Setup' }]);
const result = runGsdTools('init manager', tmpDir, { GSD_WORKSTREAM: '' });
assert.ok(result.success, `Command failed: ${result.error}`);
const output = JSON.parse(result.output);
assert.strictEqual(output.state_path, absPlanningPath(tmpDir, 'STATE.md'));
assert.strictEqual(output.roadmap_path, absPlanningPath(tmpDir, 'ROADMAP.md'));
assert.strictEqual(output.archive_dir, absPlanningPath(tmpDir, 'milestones'));
});
test('GSD_WORKSTREAM=alpha: paths resolve into the workstream, not root (#4455 regression)', () => {
seedWorkstream(tmpDir, {
name: 'alpha',
state: '---\nstatus: active\n---\n# State\n',
roadmap: '# Roadmap\n\n## Progress\n\n- [ ] **Phase 1: Setup**\n\n### Phase 1: Setup\n\n**Goal:** Bootstrap\n',
});
const result = runGsdTools('init manager', tmpDir, { GSD_WORKSTREAM: 'alpha' });
assert.ok(result.success, `Command failed: ${result.error}`);
const output = JSON.parse(result.output);
assert.strictEqual(output.state_path, absPlanningPath(tmpDir, 'workstreams', 'alpha', 'STATE.md'));
assert.strictEqual(output.roadmap_path, absPlanningPath(tmpDir, 'workstreams', 'alpha', 'ROADMAP.md'));
assert.strictEqual(output.archive_dir, absPlanningPath(tmpDir, 'workstreams', 'alpha', 'milestones'));
// Goodhart both-directions: must NOT be the flat root form.
assert.notStrictEqual(output.state_path, absPlanningPath(tmpDir, 'STATE.md'));
assert.notStrictEqual(output.roadmap_path, absPlanningPath(tmpDir, 'ROADMAP.md'));
assert.notStrictEqual(output.archive_dir, absPlanningPath(tmpDir, 'milestones'));
});
test('state_path/roadmap_path are null when the files do not exist yet', () => {
// init manager itself requires ROADMAP.md/STATE.md to exist to proceed
// past its own readiness guard, so exercise the null branch through
// init complete-milestone instead — same fs.existsSync(...) ? ... : null
// pattern, no upstream guard blocking an empty-fixture run.
const result = runGsdTools('init complete-milestone', tmpDir);
assert.ok(result.success, `Command failed: ${result.error}`);
const output = JSON.parse(result.output);
assert.strictEqual(output.state_path, null);
assert.strictEqual(output.roadmap_path, null);
assert.strictEqual(output.archive_dir, absPlanningPath(tmpDir, 'milestones'));
});
});
describe('init complete-milestone — state_path/roadmap_path/archive_dir (#4455)', () => {
let tmpDir;
beforeEach(() => {
tmpDir = require('fs').realpathSync(createTempProject());
});
afterEach(() => {
cleanup(tmpDir);
});
test('flat mode (no GSD_WORKSTREAM): paths resolve to root .planning (regression guard)', () => {
writeState(tmpDir);
writeRoadmap(tmpDir, [{ number: '1', name: 'Setup' }]);
const result = runGsdTools('init complete-milestone', tmpDir, { GSD_WORKSTREAM: '' });
assert.ok(result.success, `Command failed: ${result.error}`);
const output = JSON.parse(result.output);
assert.strictEqual(output.state_path, absPlanningPath(tmpDir, 'STATE.md'));
assert.strictEqual(output.roadmap_path, absPlanningPath(tmpDir, 'ROADMAP.md'));
assert.strictEqual(output.archive_dir, absPlanningPath(tmpDir, 'milestones'));
});
test('GSD_WORKSTREAM=alpha: paths resolve into the workstream, not root (#4455 regression)', () => {
seedWorkstream(tmpDir, {
name: 'alpha',
state: '---\nstatus: active\n---\n# State\n',
roadmap: '# Roadmap\n\n## Progress\n\n- [ ] **Phase 1: Setup**\n\n### Phase 1: Setup\n\n**Goal:** Bootstrap\n',
});
const result = runGsdTools('init complete-milestone', tmpDir, { GSD_WORKSTREAM: 'alpha' });
assert.ok(result.success, `Command failed: ${result.error}`);
const output = JSON.parse(result.output);
assert.strictEqual(output.state_path, absPlanningPath(tmpDir, 'workstreams', 'alpha', 'STATE.md'));
assert.strictEqual(output.roadmap_path, absPlanningPath(tmpDir, 'workstreams', 'alpha', 'ROADMAP.md'));
assert.strictEqual(output.archive_dir, absPlanningPath(tmpDir, 'workstreams', 'alpha', 'milestones'));
assert.notStrictEqual(output.state_path, absPlanningPath(tmpDir, 'STATE.md'));
assert.notStrictEqual(output.roadmap_path, absPlanningPath(tmpDir, 'ROADMAP.md'));
assert.notStrictEqual(output.archive_dir, absPlanningPath(tmpDir, 'milestones'));
});
});
describe('init complete-milestone — milestones_path/project_path/requirements_path (#4455 follow-up)', () => {
let tmpDir;
beforeEach(() => {
tmpDir = require('fs').realpathSync(createTempProject());
});
afterEach(() => {
cleanup(tmpDir);
});
function writeRootProjectMd(dir) {
fs.writeFileSync(path.join(dir, '.planning', 'PROJECT.md'), '# Test Project\n');
}
test('flat mode: milestones_path/requirements_path resolve to root, project_path resolves to root (regression guard)', () => {
writeState(tmpDir);
writeRoadmap(tmpDir, [{ number: '1', name: 'Setup' }]);
writeRootProjectMd(tmpDir);
fs.writeFileSync(path.join(tmpDir, '.planning', 'MILESTONES.md'), '# Milestones\n');
fs.writeFileSync(path.join(tmpDir, '.planning', 'REQUIREMENTS.md'), '# Requirements\n');
const result = runGsdTools('init complete-milestone', tmpDir, { GSD_WORKSTREAM: '' });
assert.ok(result.success, `Command failed: ${result.error}`);
const output = JSON.parse(result.output);
assert.strictEqual(output.milestones_path, absPlanningPath(tmpDir, 'MILESTONES.md'));
assert.strictEqual(output.project_path, absPlanningPath(tmpDir, 'PROJECT.md'));
assert.strictEqual(output.requirements_path, absPlanningPath(tmpDir, 'REQUIREMENTS.md'));
});
test('GSD_WORKSTREAM=alpha: milestones_path/requirements_path resolve into the workstream, but project_path STAYS root (PROJECT.md is shared, #4455 follow-up regression)', () => {
seedWorkstream(tmpDir, {
name: 'alpha',
state: '---\nstatus: active\n---\n# State\n',
roadmap: '# Roadmap\n\n## Progress\n\n- [ ] **Phase 1: Setup**\n\n### Phase 1: Setup\n\n**Goal:** Bootstrap\n',
});
// PROJECT.md is only ever written at root — cmdWorkstreamCreate never
// creates a per-workstream copy (it is a documented shared file, see
// gsd-core/references/workstream-flag.md's directory diagram).
writeRootProjectMd(tmpDir);
fs.mkdirSync(path.join(tmpDir, '.planning', 'workstreams', 'alpha'), { recursive: true });
fs.writeFileSync(path.join(tmpDir, '.planning', 'workstreams', 'alpha', 'MILESTONES.md'), '# Milestones\n');
fs.writeFileSync(path.join(tmpDir, '.planning', 'workstreams', 'alpha', 'REQUIREMENTS.md'), '# Requirements\n');
const result = runGsdTools('init complete-milestone', tmpDir, { GSD_WORKSTREAM: 'alpha' });
assert.ok(result.success, `Command failed: ${result.error}`);
const output = JSON.parse(result.output);
assert.strictEqual(output.milestones_path, absPlanningPath(tmpDir, 'workstreams', 'alpha', 'MILESTONES.md'));
assert.strictEqual(output.requirements_path, absPlanningPath(tmpDir, 'workstreams', 'alpha', 'REQUIREMENTS.md'));
// The regression this test guards against: project_path must be the
// ROOT PROJECT.md, never a workstream-scoped path that no writer ever
// populates.
assert.strictEqual(output.project_path, absPlanningPath(tmpDir, 'PROJECT.md'));
assert.notStrictEqual(output.project_path, absPlanningPath(tmpDir, 'workstreams', 'alpha', 'PROJECT.md'));
});
test('GSD_PROJECT=second-product: project_path resolves into the PROJECT namespace, not root (#3749 regression — round 1 of this fix broke this)', () => {
// The FIRST version of this #4455 follow-up resolved project_path via
// planningRoot(cwd), which ignores GSD_PROJECT entirely — gsd-test caught
// this immediately (tests/init.test.cjs's pre-existing #3749 coverage) on
// this fix's own first push. PROJECT.md is shared across a project's own
// WORKSTREAMS, but a DIFFERENT project (GSD_PROJECT) legitimately gets
// its own separate PROJECT.md at `.planning/<project>/PROJECT.md`. The
// correct resolution is planningDir(cwd, null) — `ws` explicitly nulled
// (never read from GSD_WORKSTREAM), `project` left to default from
// GSD_PROJECT.
fs.mkdirSync(path.join(tmpDir, '.planning', 'second-product'), { recursive: true });
fs.writeFileSync(path.join(tmpDir, '.planning', 'second-product', 'PROJECT.md'), '# Second Product\n');
writeRootProjectMd(tmpDir); // an unrelated root PROJECT.md must not win
const result = runGsdTools('init complete-milestone', tmpDir, { GSD_PROJECT: 'second-product' });
assert.ok(result.success, `Command failed: ${result.error}`);
const output = JSON.parse(result.output);
assert.strictEqual(output.project_path, absPlanningPath(tmpDir, 'second-product', 'PROJECT.md'));
assert.notStrictEqual(output.project_path, absPlanningPath(tmpDir, 'PROJECT.md'));
});
test('GSD_PROJECT=second-product AND GSD_WORKSTREAM=alpha together: project_path follows the PROJECT namespace, ignoring the workstream', () => {
fs.mkdirSync(path.join(tmpDir, '.planning', 'second-product', 'workstreams', 'alpha'), { recursive: true });
fs.writeFileSync(path.join(tmpDir, '.planning', 'second-product', 'PROJECT.md'), '# Second Product\n');
const result = runGsdTools('init complete-milestone', tmpDir, { GSD_PROJECT: 'second-product', GSD_WORKSTREAM: 'alpha' });
assert.ok(result.success, `Command failed: ${result.error}`);
const output = JSON.parse(result.output);
assert.strictEqual(output.project_path, absPlanningPath(tmpDir, 'second-product', 'PROJECT.md'));
assert.notStrictEqual(output.project_path,
absPlanningPath(tmpDir, 'second-product', 'workstreams', 'alpha', 'PROJECT.md'));
});
});
describe('withProjectRoot — project_title reads PROJECT.md from root even under a workstream (#4455 follow-up)', () => {
let tmpDir;
beforeEach(() => {
tmpDir = require('fs').realpathSync(createTempProject());
});
afterEach(() => {
cleanup(tmpDir);
});
// Exercised via `init complete-milestone` rather than `init manager`:
// cmdInitManager has its own readiness guard requiring STATE.md/ROADMAP.md
// to already exist (see the "state_path/roadmap_path are null" test
// above), which would obscure whether THIS test is actually exercising
// withProjectRoot. Both commands share the same withProjectRoot helper.
test('flat mode: project_title is populated from the root PROJECT.md (regression guard)', () => {
fs.writeFileSync(path.join(tmpDir, '.planning', 'PROJECT.md'), '# My Test Project\n\nSome content.\n');
const result = runGsdTools('init complete-milestone', tmpDir, { GSD_WORKSTREAM: '' });
assert.ok(result.success, `Command failed: ${result.error}`);
const output = JSON.parse(result.output);
assert.strictEqual(output.project_title, 'My Test Project');
});
test('GSD_WORKSTREAM=alpha: project_title is STILL populated from the root PROJECT.md, not silently dropped (#4455 follow-up regression)', () => {
seedWorkstream(tmpDir, {
name: 'alpha',
state: '---\nstatus: active\n---\n# State\n',
roadmap: '# Roadmap\n\n## Progress\n\n- [ ] **Phase 1: Setup**\n\n### Phase 1: Setup\n\n**Goal:** Bootstrap\n',
});
fs.writeFileSync(path.join(tmpDir, '.planning', 'PROJECT.md'), '# My Test Project\n\nSome content.\n');
const result = runGsdTools('init complete-milestone', tmpDir, { GSD_WORKSTREAM: 'alpha' });
assert.ok(result.success, `Command failed: ${result.error}`);
const output = JSON.parse(result.output);
assert.strictEqual(output.project_title, 'My Test Project',
'project_title must be read from the shared root PROJECT.md even when a workstream is active');
});
});
describe('init subcommands sharing the project_exists/project_path PROJECT.md pattern (#4455 follow-up)', () => {
// A code-review pass on this fix's first draft found the identical
// workstream-scoped-PROJECT.md bug (fixed above for cmdInitCompleteMilestone
// and withProjectRoot) repeated verbatim, via grep, in six more cmdInit*
// functions. Each is exercised here through its real CLI subcommand rather
// than re-asserting src/init.cts internals directly, so a regression in the
// router wiring would also be caught. `init manager` is deliberately
// excluded: it has its own STATE.md/ROADMAP.md readiness guard (covered
// separately above via `init complete-milestone`, which shares
// withProjectRoot). `new-milestone` was originally deferred to #4456's own
// new-milestone.md workstream-forwarding work (see PR #4543), but that PR
// only exercised the *workflow's* `--ws` argv forwarding through a stubbed
// gsd_run, never cmdInitNewMilestone's real project_exists/project_path
// output — #4457 closes that gap by folding it into this loop; it has no
// manager-style readiness precondition, so it fits the shared assertion
// shape below without a dedicated test.
const SUBCOMMANDS = ['ingest-docs', 'resume', 'progress', 'new-project', 'new-milestone'];
let tmpDir;
beforeEach(() => {
tmpDir = require('fs').realpathSync(createTempProject());
});
afterEach(() => {
cleanup(tmpDir);
});
for (const subcommand of SUBCOMMANDS) {
test(`GSD_WORKSTREAM=alpha: "init ${subcommand}" resolves project_path to the shared root PROJECT.md`, () => {
seedWorkstream(tmpDir, {
name: 'alpha',
state: '---\nstatus: active\n---\n# State\n',
roadmap: '# Roadmap\n\n## Progress\n\n- [ ] **Phase 1: Setup**\n\n### Phase 1: Setup\n\n**Goal:** Bootstrap\n',
});
fs.writeFileSync(path.join(tmpDir, '.planning', 'PROJECT.md'), '# Test Project\n');
const result = runGsdTools(`init ${subcommand}`, tmpDir, { GSD_WORKSTREAM: 'alpha' });
assert.ok(result.success, `init ${subcommand} failed: ${result.error}`);
const output = JSON.parse(result.output);
assert.strictEqual(output.project_exists, true,
`init ${subcommand}: project_exists must be true (root PROJECT.md exists), got: ${JSON.stringify(output.project_exists)}`);
if ('project_path' in output) {
assert.strictEqual(output.project_path, absPlanningPath(tmpDir, 'PROJECT.md'),
`init ${subcommand}: project_path must resolve to the shared root PROJECT.md, got: ${output.project_path}`);
assert.notStrictEqual(output.project_path, absPlanningPath(tmpDir, 'workstreams', 'alpha', 'PROJECT.md'),
`init ${subcommand}: project_path must not resolve into the workstream directory`);
}
});
}
test('milestone-op: GSD_WORKSTREAM=alpha does not report project_exists=false for a root-only PROJECT.md', () => {
// milestone-op does not expose a project_path field, only project_exists
// via buildInitCompletenessFields — the coreComplete/init_incomplete fix.
seedWorkstream(tmpDir, {
name: 'alpha',
state: '---\nstatus: active\n---\n# State\n',
roadmap: '# Roadmap\n\n## Progress\n\n- [ ] **Phase 1: Setup**\n\n### Phase 1: Setup\n\n**Goal:** Bootstrap\n',
});
fs.writeFileSync(path.join(tmpDir, '.planning', 'PROJECT.md'), '# Test Project\n');
const result = runGsdTools('init milestone-op', tmpDir, { GSD_WORKSTREAM: 'alpha' });
assert.ok(result.success, `init milestone-op failed: ${result.error}`);
const output = JSON.parse(result.output);
assert.strictEqual(output.project_exists, true,
`init milestone-op: project_exists must be true for a root-only PROJECT.md under a workstream, got: ${JSON.stringify(output.project_exists)}`);
});
});
// #4458: init new-project's sub_repos_detected field reuses core-utils.cts's
// detectSubRepos instead of new-project.md's own (now-removed) narrower `find
// -exec test -d "{}/.git"` predicate, which required .git to be a DIRECTORY and
// so silently excluded linked git worktree children (.git is a FILE there).
describe('init new-project: sub_repos_detected (#4458)', () => {
const { execFileSync } = require('child_process');
const { createTempGitProject } = require('./helpers.cjs');
const { GIT_FIXTURE_TIMEOUT_MS } = require('./helpers/timeouts.cjs');
let tmpDir;
afterEach(() => {
if (tmpDir) { cleanup(tmpDir); tmpDir = null; }
});
test('detects a REAL linked git worktree child, matching the issue #4458 repro exactly', () => {
// `git worktree add` genuinely needs a real git repo -- this is the only
// one of these three tests that does (createTempGitProject spawns
// `git init` + a commit, real subprocess overhead on Windows CI's
// Defender-scanned spawns; the other two tests below use the plain,
// no-git createTempProject fixture instead, matching the pattern
// already proven safe by the SUBCOMMANDS loop above running `init
// new-project` against a non-git tmpDir).
tmpDir = fs.realpathSync(createTempGitProject());
const worktreeDir = path.join(tmpDir, 'child-wt');
// `git worktree add` checks out files into a new working tree — the same
// "construction" weight class as init/config/add/commit, not plain
// plumbing (rev-parse/branch/log), so GIT_FIXTURE_TIMEOUT_MS is the
// correct shared norm here (tests/helpers/timeouts.cjs).
execFileSync('git', ['worktree', 'add', '-b', 'wt-branch', worktreeDir], { cwd: tmpDir, stdio: 'pipe', timeout: GIT_FIXTURE_TIMEOUT_MS });
// Confirm the fixture actually reproduces the reported shape before
// trusting the assertion below: a linked worktree's .git is a FILE.
assert.ok(fs.statSync(path.join(worktreeDir, '.git')).isFile(),
'fixture setup: linked worktree .git must be a file, not a directory');
const result = runGsdTools('init new-project', tmpDir);
assert.ok(result.success, `init new-project failed: ${result.error}`);
const output = JSON.parse(result.output);
assert.ok(Array.isArray(output.sub_repos_detected), 'sub_repos_detected must be an array');
assert.ok(output.sub_repos_detected.includes('child-wt'),
`sub_repos_detected must include the linked worktree child, got: ${JSON.stringify(output.sub_repos_detected)}`);
});
test('detects an ordinary child clone (.git as a directory) — no regression', () => {
// detectSubRepos only inspects the CHILD directory's .git, not the
// root's own git state -- a real outer repo isn't needed here, matching
// the SUBCOMMANDS loop above.
tmpDir = fs.realpathSync(createTempProject());
const cloneDir = path.join(tmpDir, 'child-clone');
fs.mkdirSync(path.join(cloneDir, '.git'), { recursive: true });
const result = runGsdTools('init new-project', tmpDir);
assert.ok(result.success, `init new-project failed: ${result.error}`);
const output = JSON.parse(result.output);
assert.ok(output.sub_repos_detected.includes('child-clone'),
`sub_repos_detected must include the ordinary child clone, got: ${JSON.stringify(output.sub_repos_detected)}`);
});
test('does not report an ordinary non-repository directory as a sub-repo', () => {
tmpDir = fs.realpathSync(createTempProject());
fs.mkdirSync(path.join(tmpDir, 'not-a-repo'));
const result = runGsdTools('init new-project', tmpDir);
assert.ok(result.success, `init new-project failed: ${result.error}`);
const output = JSON.parse(result.output);
assert.ok(!output.sub_repos_detected.includes('not-a-repo'),
`sub_repos_detected must not include a plain non-repo directory, got: ${JSON.stringify(output.sub_repos_detected)}`);
});
});
// ────────────────────────────────────────────────────────────────────────
// Folded from tests/bug-3584-runtime-slash-emitters.test.cjs — consolidation epic #1969 (B2 #1971)
// ────────────────────────────────────────────────────────────────────────
{
const { describe: __foldDescribe } = require('node:test');
__foldDescribe("folded:bug-3584-runtime-slash-emitters (consolidation epic #1969 B2 #1971)", () => {
/**
* Regression tests for bug #3584 — runtime emitters use the slash formatter.
*
* These tests exercise the actual runtime command handlers via `runGsdTools`
* and assert on the structured payloads they emit/persist. They prove that
* the high-impact emitters identified in the issue (`init.cjs` recommended
* actions, `phase.cjs` ROADMAP persistence, `verify.cjs` remediation hints,
* `milestone.cjs` Operator-Next-Steps persistence, `validate-command-router`
* fracture recommendations) no longer emit the unroutable `/gsd:<cmd>` colon
* form for skills-based runtimes.
*/
'use strict';
const { describe, test, beforeEach, afterEach } = require('node:test');
const assert = require('node:assert/strict');
const fs = require('fs');
const path = require('path');
const {
runGsdTools,
createTempProject,
createTempDir,
cleanup,
} = require('./helpers.cjs');
// Helper: assert no string field anywhere in `value` (recursive) contains '/gsd:'.
function assertNoColonForm(value, label) {
const stack = [{ v: value, p: label }];
while (stack.length > 0) {
const { v, p } = stack.pop();
if (typeof v === 'string') {
assert.ok(
!v.includes('/gsd:'),
`${p}: must not contain deprecated /gsd: form, got ${JSON.stringify(v)}`,
);
} else if (Array.isArray(v)) {
v.forEach((item, i) => stack.push({ v: item, p: `${p}[${i}]` }));
} else if (v && typeof v === 'object') {
for (const key of Object.keys(v)) {
stack.push({ v: v[key], p: `${p}.${key}` });
}
}
}
}
// Helper: collect every `command` string under a recommendedActions-style array.
function collectCommandFields(value) {
const out = [];
const stack = [value];
while (stack.length > 0) {
const v = stack.pop();
if (Array.isArray(v)) {
for (const item of v) stack.push(item);
} else if (v && typeof v === 'object') {
if (typeof v.command === 'string') out.push(v.command);
for (const key of Object.keys(v)) stack.push(v[key]);
}
}
return out;
}
describe('bug-3584: init manager recommendedActions emit hyphen form', () => {
let tmpDir;
beforeEach(() => {
tmpDir = createTempProject();
// Minimal ROADMAP + STATE so init manager will run.
fs.writeFileSync(
path.join(tmpDir, '.planning', 'ROADMAP.md'),
[
'# Roadmap',
'',
'## Milestone v1',
'',
'### Phase 1: Foundation',
'**Goal:** scaffold',
'**Plans:** 1 plan',
'',
].join('\n'),
);
fs.writeFileSync(
path.join(tmpDir, '.planning', 'STATE.md'),
'# State\n\nCurrent Phase: 1\n',
);
});
afterEach(() => cleanup(tmpDir));
test('skills runtime (claude) emits /gsd-<cmd> in recommended_actions[].command', () => {
// Plan-but-not-executed: directory exists with a PLAN.md → execute is recommended.
const phaseDir = path.join(tmpDir, '.planning', 'phases', '01-foundation');
fs.mkdirSync(phaseDir, { recursive: true });
fs.writeFileSync(path.join(phaseDir, '01-01-PLAN.md'), '# Plan\n');
const result = runGsdTools('init manager', tmpDir, { GSD_RUNTIME: 'claude' });
assert.ok(result.success, `init manager failed: ${result.error || result.output}`);
const payload = JSON.parse(result.output);
const commands = collectCommandFields(payload.recommended_actions || []);
assert.ok(commands.length > 0, 'recommended_actions should produce at least one command');
for (const cmd of commands) {
assert.ok(
cmd.startsWith('/gsd-'),
`recommended_actions command must start with /gsd- for skills-based runtimes, got ${cmd}`,
);
assert.ok(
!cmd.includes('/gsd:'),
`recommended_actions command must not contain /gsd: colon form, got ${cmd}`,
);
}
assertNoColonForm(payload, 'init.manager payload');
});
test('codex runtime emits $gsd-<cmd> in recommended_actions[].command', () => {
const phaseDir = path.join(tmpDir, '.planning', 'phases', '01-foundation');
fs.mkdirSync(phaseDir, { recursive: true });
fs.writeFileSync(path.join(phaseDir, '01-01-PLAN.md'), '# Plan\n');
const result = runGsdTools('init manager', tmpDir, { GSD_RUNTIME: 'codex' });
assert.ok(result.success, `init manager (codex) failed: ${result.error || result.output}`);
const payload = JSON.parse(result.output);
const commands = collectCommandFields(payload.recommended_actions || []);
assert.ok(commands.length > 0);
for (const cmd of commands) {
assert.ok(
cmd.startsWith('$gsd-'),
`codex recommended_actions command must use $gsd- shell-var form, got ${cmd}`,
);
}
});
test('codex alias runtime emits $gsd-<cmd> in recommended_actions[].command', () => {
const phaseDir = path.join(tmpDir, '.planning', 'phases', '01-foundation');
fs.mkdirSync(phaseDir, { recursive: true });
fs.writeFileSync(path.join(phaseDir, '01-01-PLAN.md'), '# Plan\n');
const result = runGsdTools('init manager', tmpDir, { GSD_RUNTIME: 'codex-app' });
assert.ok(result.success, `init manager (codex-app) failed: ${result.error || result.output}`);
const payload = JSON.parse(result.output);
const commands = collectCommandFields(payload.recommended_actions || []);
assert.ok(commands.length > 0);
for (const cmd of commands) {
assert.ok(
cmd.startsWith('$gsd-'),
`codex alias recommended_actions command must use $gsd- shell-var form, got ${cmd}`,
);
}
});
});
describe('bug-3584: phase add persists hyphen form into ROADMAP.md', () => {
let tmpDir;
beforeEach(() => {
tmpDir = createTempProject();
fs.writeFileSync(
path.join(tmpDir, '.planning', 'ROADMAP.md'),
'# Roadmap\n\n## Milestone v1\n\n',
);
fs.writeFileSync(
path.join(tmpDir, '.planning', 'STATE.md'),
'# State\n',
);
});
afterEach(() => cleanup(tmpDir));
test('phase add persists hyphen-form slash command in roadmap get-phase payload', () => {
// 1. Add a phase — the system under test persists the phase entry into ROADMAP.md.
const addResult = runGsdTools(
['phase', 'add', 'Test new feature'],
tmpDir,
{ GSD_RUNTIME: 'claude' },
);
assert.ok(addResult.success, `phase add failed: ${addResult.error || addResult.output}`);
const addPayload = JSON.parse(addResult.output);
assert.ok(addPayload.phase_number, 'phase add must return phase_number');
// 2. Read the persisted section back via the structured roadmap-get-phase
// contract (NOT via readFileSync; the `section` field on the JSON payload
// is the runtime's typed projection of the on-disk ROADMAP content).
const getResult = runGsdTools(
['roadmap', 'get-phase', String(addPayload.phase_number)],
tmpDir,
{ GSD_RUNTIME: 'claude' },
);
assert.ok(getResult.success, `roadmap get-phase failed: ${getResult.error || getResult.output}`);
const getPayload = JSON.parse(getResult.output);
assert.ok(getPayload.found, 'roadmap get-phase must find the newly-added phase');
assert.ok(typeof getPayload.section === 'string', 'roadmap get-phase must return a section field');
// 3. The persisted phase section must use the routable hyphen form.
assert.ok(
!getPayload.section.includes('/gsd:plan-phase'),
`persisted phase section must not contain /gsd:plan-phase, got: ${getPayload.section}`,
);
assert.ok(
getPayload.section.includes('/gsd-plan-phase'),
`persisted phase section must contain /gsd-plan-phase, got: ${getPayload.section}`,
);
});
});
describe('bug-3584: validate health emits hyphen form in fix hints', () => {
test('validate health on a broken project returns hyphen-form fix strings', (t) => {
const tmpDir = createTempDir();
t.after(() => cleanup(tmpDir));
// No .planning directory → E001 fires with a `fix:` string that contains
// the slash-command form.
const result = runGsdTools(
['validate', 'health'],
tmpDir,
{ GSD_RUNTIME: 'claude' },
);
// validate health exits non-zero on broken projects but still emits JSON to stdout.
const stdout = result.output;
let payload;
try {
payload = JSON.parse(stdout);
} catch (e) {
throw new Error(`validate health did not emit parseable JSON: ${stdout.slice(0, 400)}`);
}
const allIssues = []
.concat(payload.errors || [])
.concat(payload.warnings || [])
.concat(payload.info || []);
assert.ok(allIssues.length > 0, 'validate health on a bare tmpdir should report at least one issue');
const fixesWithSlash = allIssues
.map((i) => i.fix)
.filter((f) => typeof f === 'string' && /gsd[-:]/.test(f));
assert.ok(
fixesWithSlash.length > 0,
'at least one fix hint should reference a /gsd- slash command',
);
for (const fix of fixesWithSlash) {
assert.ok(
!fix.includes('/gsd:'),
`validate health fix hint must not contain /gsd: colon form, got ${JSON.stringify(fix)}`,
);
}
assertNoColonForm(payload, 'validate health payload');
});
});
describe('bug-3584: validate context recommendation uses hyphen form', () => {
test('warning/critical recommendations emit /gsd-thread', (t) => {
const tmpDir = createTempProject();
t.after(() => cleanup(tmpDir));
// Critical band: 75% utilization. validate context emits JSON only with --json.
const result = runGsdTools(
['validate', 'context', '--tokens-used', '75000', '--context-window', '100000', '--json'],
tmpDir,
{ GSD_RUNTIME: 'claude' },
);
assert.ok(result.success, `validate context failed: ${result.error || result.output}`);
const payload = JSON.parse(result.output);
assert.ok(payload.recommendation, 'critical utilization should produce a recommendation');
assert.ok(
!payload.recommendation.includes('/gsd:'),
`recommendation must not contain /gsd:, got ${JSON.stringify(payload.recommendation)}`,
);
assert.ok(
payload.recommendation.includes('/gsd-thread'),
`recommendation must reference /gsd-thread, got ${JSON.stringify(payload.recommendation)}`,
);
});
});
describe('bug-3584: validate health uses formatter for codex runtime too', () => {
test('validate health under codex emits $gsd-<cmd> in fix strings (positive assertion)', (t) => {
const tmpDir = createTempDir();
t.after(() => cleanup(tmpDir));
const result = runGsdTools(
['validate', 'health'],
tmpDir,
{ GSD_RUNTIME: 'codex' },
);
let payload;
try {
payload = JSON.parse(result.output);
} catch (e) {
throw new Error(`validate health (codex) did not emit JSON: ${result.output.slice(0, 400)}`);
}
const allIssues = []
.concat(payload.errors || [])
.concat(payload.warnings || [])
.concat(payload.info || []);
// Collect fixes that mention any gsd slash-command form so we can lock
// both the absence of legacy forms AND the presence of the codex shape.
const fixesWithGsdRef = allIssues
.map((i) => i.fix)
.filter((f) => typeof f === 'string' && /(?:\$|\/)gsd[-:]/.test(f));
assert.ok(
fixesWithGsdRef.length > 0,
'validate health on a bare tmpdir must produce at least one fix hint referencing a gsd command',
);
for (const fix of fixesWithGsdRef) {
assert.ok(
fix.includes('$gsd-'),
`codex validate health fix must use shell-var $gsd- form, got ${JSON.stringify(fix)}`,
);
assert.ok(
!fix.includes('/gsd:'),
`codex validate health fix must not contain /gsd: colon form, got ${JSON.stringify(fix)}`,
);
assert.ok(
!fix.includes('/gsd-'),
`codex validate health fix must not contain /gsd- (skills) form, got ${JSON.stringify(fix)}`,
);
}
});
});
});
}